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Monitoring Pavement Response during Spring Thaw Using Fiber-Optic Sensors

机译:使用光纤传感器在弹簧解冻过程中监测路面响应

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Seasonal variation in pavement response is considered to be a major factor affecting pavement performance. Several studies have concluded that in cold climates, most of the pavement damage by fatigue and permanent deformation can be associated with the loss of bearing capacity during spring thaw. The understanding of the bearing capacity loss phenomena needs to be improved and pavement design methodologies dealing specifically with the problem need to be developed. The Quebec Ministry of transportation, in collaboration with the Laboratoire central des ponts et chaussees (LCPC, France) and Laval University, has undertaken a major research project based on the monitoring of instrumented test sections. Four heavily circulated test sections were constructed and instrumented. Pavement instrumentation includes thermistors, moisture sensors, frost gages, piezometers and heave gauges. Several techniques were used to monitor pavement response during spring. Among other, specially designed strain gauges and multi-depths deflectometers were installed in the test sections. These gauges were built using optic-fibre technology. The paper will describe the technology used to develop the new sensors. It will also report on the installation of the instruments and on the measurements taken at the test site under a moving truck during spring thaw.
机译:在路面响应季节变化被认为是影响路面使用性能的主要因素。几项研究已经得出结论,在寒冷气候中,大多数的疲劳和永久变形的路面损坏的可以用的承载能力弹簧解冻时的损耗相关联。承载力丢失的现象需求的理解改进和待开发的路面设计方法的问题需要专门处理。魁北克省交通厅,与其合作了Laboratoire中央德路桥(LCPC,法国)和拉瓦尔大学,开展了基于仪表试验段的监控重大科研项目。四个分发试验段构建和仪器。路面仪器包括热敏电阻器,湿度传感器,霜计,压力计和升沉压力表。几种技术被用来监测弹簧期间路面响应。除了其他,专门设计的应变计和多深度deflectometers分别安装在测试部分。这些测量仪使用光学纤维技术构建的。本文将介绍用于开发新的传感器技术。这也将在安装仪器和春季解冻期间移动的卡车下在试验现场进行的测量报告。

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